4D Printing of Shape-Morphing Liquid Crystal Elastomers

Tongzhi Zang, Shuang Fu, Junpeng Cheng, Chun Zhang, Xili Lu*, Jianshe Hu*, Hesheng Xia* and Yue Zhao*, 
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Abstract

In nature, biological systems can sense environmental changes and alter their performance parameters in real time to adapt to environmental changes. Inspired by these, scientists have developed a range of novel shape-morphing materials. Shape-morphing materials are a kind of “intelligent” materials that exhibit responses to external stimuli in a predetermined way and then display a preset function. Liquid crystal elastomer (LCE) is a typical representative example of shape-morphing materials. The emergence of 4D printing technology can effectively simplify the preparation process of shape-morphing LCEs, by changing the printing material compositions and printing conditions, enabling precise control and macroscopic design of the shape-morphing modes. At the same time, the layer-by-layer stacking method can also endow the shape-morphing LCEs with complex, hierarchical orientation structures, which gives researchers a great degree of design freedom. 4D printing has greatly expanded the application scope of shape-morphing LCEs as soft intelligent materials. This review systematically reports the recent progress of 3D/4D printing of shape-morphing LCEs, discusses various 4D printing technologies, synthesis methods and actuation modes of 3D/4D printed LCEs, and summarizes the opportunities and challenges of 3D/4D printing technologies in preparing shape-morphing LCEs.

Abstract Image

成型液晶弹性体的 4D 打印
在自然界中,生物系统能够感知环境变化,并实时改变其性能参数,以适应环境变化。受此启发,科学家们开发出了一系列新型形状变形材料。形状变构材料是一种 "智能 "材料,能以预先确定的方式对外部刺激做出反应,然后显示出预设的功能。液晶弹性体(LCE)就是形状变形材料的典型代表。4D 打印技术的出现,通过改变打印材料成分和打印条件,可以有效简化形状变构液晶弹性体的制备过程,实现形状变构模式的精确控制和宏观设计。同时,逐层堆叠的方法还能赋予形变 LCE 复杂的分层取向结构,为研究人员提供了极大的设计自由度。4D 打印极大地拓展了形变 LCE 作为软智能材料的应用范围。本综述系统地报道了3D/4D打印成型LCE的最新进展,讨论了各种4D打印技术、3D/4D打印LCE的合成方法和驱动模式,总结了3D/4D打印技术在制备成型LCE方面的机遇和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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